Friction, and Inclined Plane Friction Motion
LAWS OF MOTION (ADDITIONAL)

371970 A boy throws a cricket ball from the boundary to the wicket keeper. If the frictional force due to air \(\left(f_{\mathrm{a}}\right)\) cannot be ignored, the forces acting on the ball at the position \(X\) are represented by

1 original image
2 original image
3 original image
4 original image
LAWS OF MOTION (ADDITIONAL)

371971 The coefficient of friction ' \(\mu\) ' and the angle of friction ' \(\lambda\) ' are related by

1 \(\tan \lambda=\mu\)
2 \(\cos \lambda=\mu\)
3 \(\sin \lambda=\mu\)
4 \(\cos \mu=\lambda\)
LAWS OF MOTION (ADDITIONAL)

371972 When a body is placed on a rough plane \((\) coefficient of friction \(=\mu)\) inclined at an angle \(\theta\) to the horizontal, its acceleration is _ \(\quad(\) acceleration due to gravity \(=\mathbf{g}\) )

1 \(g(\sin \theta-\mu \cos \theta)\)
2 \(g(\sin \theta-\cos \theta)\)
3 \(g \mu(\sin \theta-\cos \theta)\)
4 \(g(\mu \sin \theta-\cos \theta)\)
LAWS OF MOTION (ADDITIONAL)

371973 Ablock ' \(A\) ' of mass \(100 \mathrm{~kg}\) is kept above another block ' \(B\) ' of mass \(300 \mathrm{~kg}\). ' \(A\) ' is tied to the wall ' \(C\) ' with a horizontal string. The coefficient of friction between ' \(A\) ' and ' \(B\) ' is 0.35 and that between ' \(B\) ' and the horizontal surface is 0.5 Find the horizontal force \(P\). necessary to move block ' \(B\) '.

1 \(1150 \mathrm{~N}\)
2 \(1250 \mathrm{~N}\)
3 \(2350 \mathrm{~N}\)
4 \(1420 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371970 A boy throws a cricket ball from the boundary to the wicket keeper. If the frictional force due to air \(\left(f_{\mathrm{a}}\right)\) cannot be ignored, the forces acting on the ball at the position \(X\) are represented by

1 original image
2 original image
3 original image
4 original image
LAWS OF MOTION (ADDITIONAL)

371971 The coefficient of friction ' \(\mu\) ' and the angle of friction ' \(\lambda\) ' are related by

1 \(\tan \lambda=\mu\)
2 \(\cos \lambda=\mu\)
3 \(\sin \lambda=\mu\)
4 \(\cos \mu=\lambda\)
LAWS OF MOTION (ADDITIONAL)

371972 When a body is placed on a rough plane \((\) coefficient of friction \(=\mu)\) inclined at an angle \(\theta\) to the horizontal, its acceleration is _ \(\quad(\) acceleration due to gravity \(=\mathbf{g}\) )

1 \(g(\sin \theta-\mu \cos \theta)\)
2 \(g(\sin \theta-\cos \theta)\)
3 \(g \mu(\sin \theta-\cos \theta)\)
4 \(g(\mu \sin \theta-\cos \theta)\)
LAWS OF MOTION (ADDITIONAL)

371973 Ablock ' \(A\) ' of mass \(100 \mathrm{~kg}\) is kept above another block ' \(B\) ' of mass \(300 \mathrm{~kg}\). ' \(A\) ' is tied to the wall ' \(C\) ' with a horizontal string. The coefficient of friction between ' \(A\) ' and ' \(B\) ' is 0.35 and that between ' \(B\) ' and the horizontal surface is 0.5 Find the horizontal force \(P\). necessary to move block ' \(B\) '.

1 \(1150 \mathrm{~N}\)
2 \(1250 \mathrm{~N}\)
3 \(2350 \mathrm{~N}\)
4 \(1420 \mathrm{~N}\)
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LAWS OF MOTION (ADDITIONAL)

371970 A boy throws a cricket ball from the boundary to the wicket keeper. If the frictional force due to air \(\left(f_{\mathrm{a}}\right)\) cannot be ignored, the forces acting on the ball at the position \(X\) are represented by

1 original image
2 original image
3 original image
4 original image
LAWS OF MOTION (ADDITIONAL)

371971 The coefficient of friction ' \(\mu\) ' and the angle of friction ' \(\lambda\) ' are related by

1 \(\tan \lambda=\mu\)
2 \(\cos \lambda=\mu\)
3 \(\sin \lambda=\mu\)
4 \(\cos \mu=\lambda\)
LAWS OF MOTION (ADDITIONAL)

371972 When a body is placed on a rough plane \((\) coefficient of friction \(=\mu)\) inclined at an angle \(\theta\) to the horizontal, its acceleration is _ \(\quad(\) acceleration due to gravity \(=\mathbf{g}\) )

1 \(g(\sin \theta-\mu \cos \theta)\)
2 \(g(\sin \theta-\cos \theta)\)
3 \(g \mu(\sin \theta-\cos \theta)\)
4 \(g(\mu \sin \theta-\cos \theta)\)
LAWS OF MOTION (ADDITIONAL)

371973 Ablock ' \(A\) ' of mass \(100 \mathrm{~kg}\) is kept above another block ' \(B\) ' of mass \(300 \mathrm{~kg}\). ' \(A\) ' is tied to the wall ' \(C\) ' with a horizontal string. The coefficient of friction between ' \(A\) ' and ' \(B\) ' is 0.35 and that between ' \(B\) ' and the horizontal surface is 0.5 Find the horizontal force \(P\). necessary to move block ' \(B\) '.

1 \(1150 \mathrm{~N}\)
2 \(1250 \mathrm{~N}\)
3 \(2350 \mathrm{~N}\)
4 \(1420 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371970 A boy throws a cricket ball from the boundary to the wicket keeper. If the frictional force due to air \(\left(f_{\mathrm{a}}\right)\) cannot be ignored, the forces acting on the ball at the position \(X\) are represented by

1 original image
2 original image
3 original image
4 original image
LAWS OF MOTION (ADDITIONAL)

371971 The coefficient of friction ' \(\mu\) ' and the angle of friction ' \(\lambda\) ' are related by

1 \(\tan \lambda=\mu\)
2 \(\cos \lambda=\mu\)
3 \(\sin \lambda=\mu\)
4 \(\cos \mu=\lambda\)
LAWS OF MOTION (ADDITIONAL)

371972 When a body is placed on a rough plane \((\) coefficient of friction \(=\mu)\) inclined at an angle \(\theta\) to the horizontal, its acceleration is _ \(\quad(\) acceleration due to gravity \(=\mathbf{g}\) )

1 \(g(\sin \theta-\mu \cos \theta)\)
2 \(g(\sin \theta-\cos \theta)\)
3 \(g \mu(\sin \theta-\cos \theta)\)
4 \(g(\mu \sin \theta-\cos \theta)\)
LAWS OF MOTION (ADDITIONAL)

371973 Ablock ' \(A\) ' of mass \(100 \mathrm{~kg}\) is kept above another block ' \(B\) ' of mass \(300 \mathrm{~kg}\). ' \(A\) ' is tied to the wall ' \(C\) ' with a horizontal string. The coefficient of friction between ' \(A\) ' and ' \(B\) ' is 0.35 and that between ' \(B\) ' and the horizontal surface is 0.5 Find the horizontal force \(P\). necessary to move block ' \(B\) '.

1 \(1150 \mathrm{~N}\)
2 \(1250 \mathrm{~N}\)
3 \(2350 \mathrm{~N}\)
4 \(1420 \mathrm{~N}\)